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Peer reviewedOdom, Richard D.; Mumbauer, Corinne C. – Developmental Psychology, 1971
Descriptors: Age Differences, Cognitive Processes, Color, Concept Formation
Huque, Abu Obaidul – Sci Educ, 1970
Descriptors: Concept Formation, Educational Objectives, Inquiry, Learning
Peer reviewedMayer, Richard E. – Journal of Educational Psychology, 1983
Subjects listened to a short science passage one, two, or three times. Overall amount recalled increased with number of presentations, but recall of conceptual principles and related information increased sharply with repetition, whereas recall of formal equations and concrete analogies did not. Advance organizers functioned similarly. (Author/PN)
Descriptors: Advance Organizers, Concept Formation, Higher Education, Listening Skills
Kamii, Constance – Phi Delta Kappan, 1982
Too many approaches to mathematics instruction at the elementary level focus only on the production of correct answers rather than on the development of mathematical thinking skills. Author urges encouragement of children's own thought processes. (Author/PGD)
Descriptors: Concept Formation, Elementary Education, Elementary School Mathematics, Mathematical Concepts
Peer reviewedWarnock, Peter – Lifelong Learning: The Adult Years, 1979
Encourages adult educators to use a creative approach to solving problems and making decisions, defining creative thinking as a complex process of discovery. States that adult educators should find ways to change how they look at problems and offers some suggestions. (MF)
Descriptors: Adoption (Ideas), Adult Educators, Concept Formation, Creative Thinking
Peer reviewedOlson, Melfried – School Science and Mathematics, 1979
An example is discussed in which a drill exercise, initially involving whole number addition, can be used to develop concepts in equations of many variables. (MP)
Descriptors: Algebra, Concept Formation, Instruction, Learning Activities
Peer reviewedCogan, John J. – Peabody Journal of Education, 1980
This article discusses an audiovisual method of teaching basic economic decision making and personal money management to children in the intermediate grades (4-6). (CJ)
Descriptors: Audiovisual Instruction, Concept Formation, Consumer Education, Decision Making Skills
Denniss, John – Mathematics Teaching, 1979
Research done with ten year olds on problem solving, generalization, and proof is outlined. (MK)
Descriptors: Concept Formation, Elementary Education, Elementary School Mathematics, Geometric Concepts
Peer reviewedMenigaux, Jacqueline – Physics Education, 1994
Describes an investigation that explores students' understanding of the translation, rotation, and deformation of an object. Findings illustrate that students have difficulty appreciating that these different phenomena can occur simultaneously. Discusses some implications for teaching. (DDR)
Descriptors: Concept Formation, Energy, Foreign Countries, Higher Education
Peer reviewedCheng, Peter C-H.; Shipstone, David M. – International Journal of Science Education, 2003
Presents results of preliminary trials that suggest that the program devised helped UK Year 12 (A-level) learners develop useful concepts of current and voltage, acquire a more integrated understanding of circuit behavior, and overcome their tendencies towards localized and sequential reasoning. Provides learners with a valuable aid for problem…
Descriptors: Concept Formation, Electric Circuits, Foreign Countries, Learning Strategies
Mumford, Michael D.; And Others – Creativity Research Journal, 1996
College students (N=135) were presented with novel, ill-defined problems and asked to select concepts they thought would help solve the problems. The use of concepts organized around long-term goals was positively related to indices of solution quality and originality. (DB)
Descriptors: Cognitive Processes, College Students, Concept Formation, Creative Thinking
Peer reviewedOlson, Melfried; Olson, Judith – Teaching Children Mathematics, 2001
Discusses the Tiles and Sides problem from the December 2000 issue. Indicates that this problem is accessible to students at different grade levels. Presents samples of student responses and their teachers' analysis. (KHR)
Descriptors: Arithmetic, Calculators, Concept Formation, Elementary Education
Peer reviewedLannin, John K. – Mathematics Teaching in the Middle School, 2003
Describes students' generalization strategies and justifications as they engage in patterning activities. (YDS)
Descriptors: Algebra, Concept Formation, Generalization, Mathematics Education
Peer reviewedLangrall, Cynthia W.; Swafford, Jane – Mathematics Teaching in the Middle School, 2000
Describes how students develop proportional reasoning through problem solving. Identifies the essential components of proportional reasoning and includes recommendations for instruction. (YDS)
Descriptors: Algebra, Concept Formation, Mathematics Activities, Mathematics Instruction
Peer reviewedMcMillan, Claude, III; Swadener, Marc – Journal of Research in Science Teaching, 1991
Describes the problem-solving behaviors of six novice subjects attempting to solve an electrostatics problem in calculus-based college physics. The level of qualitative thinking exhibited by these novices was determined. Sound procedural knowledge and problem representation were suggested as an integral part of skilled problem solving in physics.…
Descriptors: Calculus, Cognitive Development, Concept Formation, Higher Education


